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A novel inorganic mesoporous material with a nematic structure derived from nanocrystalline cellulose as the stationary phase for high-performance liquid chromatography

机译:具有纳米晶纤维素作为固定相的向列结构的新型无机介孔材料,用于高效液相色谱

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Chiral nematic mesoporous silica (CNMS) is a novel inorganic mesoporous material that has properties of both mesoporous and liquid crystal materials. In this work, we report CNMS as a stationary phase for high-performance liquid chromatographic (HPLC) separation of positional isomers. High-resolution separation of aminophenol, dihydroxybenzene, nitroaniline, nitrophenol, chloroaniline, bromoaniline, iodoaniline, dinitrobenzene, nitrochlorobenzene and nitrobromobenzene isomers on CNMS columns was performed. Slurry-packed CNMS columns had better selectivity than commercial beta-cyclodextrin HPLC columns for separating these positional isomers. The effects of mobile phase composition, injected analyte mass and column temperature on separation were investigated. The relative standard deviations for five replicate separations of positional isomers were 0.10-0.43% for the retention time and 0.5-3.9% for the peak area. Therefore, CNMS columns are promising for separating positional isomers based on their good reproducibility, high resolution and excellent selectivity. In addition, the column also exhibits recognition ability toward racemates.
机译:手性向列型介孔二氧化硅(CNMS)是一种新型的无机介孔材料,具有介孔和液晶材料的特性。在这项工作中,我们报告了CNMS作为位置异构体的高效液相色谱(HPLC)分离的固定相。在CNMS色谱柱上对氨基苯酚,二羟基苯,硝基苯胺,硝基苯酚,氯苯胺,溴苯胺,碘苯胺,二硝基苯,硝基氯苯和硝基溴苯异构体进行了高分辨率分离。淤浆填充的CNMS色谱柱比市售的β-环糊精HPLC色谱柱具有更好的选择性,可以分离这些位置异构体。研究了流动相组成,进样分析物质量和柱温对分离的影响。位置异构体的五次重复分离的相对标准偏差,保留时间为0.10-0.43%,峰面积为0.5-3.9%。因此,CNMS色谱柱具有良好的重现性,高分辨率和出色的选择性,因此有望用于分离位置异构体。另外,该柱还表现出对消旋体的识别能力。

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